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Physical mechanisms underlying the strain-rate-dependent mechanical behavior of kangaroo shoulder cartilage

机译:袋鼠肩软骨应变速率依赖性机械行为的物理机制

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摘要

Due to anatomical and biomechanical similarities to human shoulder, kangaroo was chosen as a model to study shoulder cartilage. Comprehensive enzymatic degradation and indentation tests were applied on kangaroo shoulder cartilage to study mechanisms underlying its strain-rate-dependent mechanical behavior. We report that superficial collagen plays a more significant role than proteoglycans in facilitating strain-rate-dependent behavior of the kangaroo shoulder cartilage. By comparing the mechanical properties of degraded and normal cartilages, it was noted that proteoglycan and collagen degradation significantly compromised strain-rate-dependent mechanical behavior of the cartilage. Superficial collagen contributed equally to the tissue behavior at all strain-rates. This is different to the studies reported on knee cartilage and confirms the importance of superficial collagen on shoulder cartilage mechanical behavior. A porohyperelastic numerical model also indicated that collagen disruption would lead to faster damage of the shoulder cartilage than when proteoglycans are depleted.
机译:由于与人类肩部在解剖学和生物力学上的相似性,袋鼠被选为研究肩软骨的模型。对袋鼠肩软骨进行了全面的酶促降解和压痕测试,以研究其依赖于应变率的机械行为的机制。我们报告说,表皮胶原蛋白比蛋白聚糖在促进袋鼠肩软骨的应变率依赖性行为中起着更为重要的作用。通过比较降解软骨和正常软骨的机械性能,可以发现蛋白聚糖和胶原蛋白降解显着损害了应变速率依赖性的软骨机械性能。在所有应变率下,表皮胶原均对组织行为有同等贡献。这与报道的关于膝软骨的研究不同,并且证实了浅表胶原对肩软骨机械行为的重要性。多孔弹性模型也表明,胶原蛋白的破坏将比蛋白聚糖被耗尽时导致肩软骨的损伤更快。

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  • 来源
    《Applied Physics Letters》 |2015年第10期|103701.1-103701.5|共5页
  • 作者单位

    School of Chemistry, Physics and Mechanical Engineering, Queensland University of Technology (QUT), 2 George Street, Brisbane, Queensland 4000, Australia;

    School of Chemistry, Physics and Mechanical Engineering, Queensland University of Technology (QUT), 2 George Street, Brisbane, Queensland 4000, Australia;

    School of Chemistry, Physics and Mechanical Engineering, Queensland University of Technology (QUT), 2 George Street, Brisbane, Queensland 4000, Australia;

    Central Analytical Research Facility, Queensland University of Technology (QUT), 2 George Street, Brisbane, Queensland 4000, Australia;

    School of Chemistry, Physics and Mechanical Engineering, Queensland University of Technology (QUT), 2 George Street, Brisbane, Queensland 4000, Australia;

    School of Chemistry, Physics and Mechanical Engineering, Queensland University of Technology (QUT), 2 George Street, Brisbane, Queensland 4000, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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